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Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling

Mycoplasma pneumoniae, a threatening pathogen with a minimal genome, is a model organism for bacterial systems biology for which substantial experimental information is available. With the goal of understanding the complex interactions underlying its metabolism, we analyzed and characterized the met...

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Autores principales: Wodke, Judith A H, Puchałka, Jacek, Lluch-Senar, Maria, Marcos, Josep, Yus, Eva, Godinho, Miguel, Gutiérrez-Gallego, Ricardo, dos Santos, Vitor A P Martins, Serrano, Luis, Klipp, Edda, Maier, Tobias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3658275/
https://www.ncbi.nlm.nih.gov/pubmed/23549481
http://dx.doi.org/10.1038/msb.2013.6
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author Wodke, Judith A H
Puchałka, Jacek
Lluch-Senar, Maria
Marcos, Josep
Yus, Eva
Godinho, Miguel
Gutiérrez-Gallego, Ricardo
dos Santos, Vitor A P Martins
Serrano, Luis
Klipp, Edda
Maier, Tobias
author_facet Wodke, Judith A H
Puchałka, Jacek
Lluch-Senar, Maria
Marcos, Josep
Yus, Eva
Godinho, Miguel
Gutiérrez-Gallego, Ricardo
dos Santos, Vitor A P Martins
Serrano, Luis
Klipp, Edda
Maier, Tobias
author_sort Wodke, Judith A H
collection PubMed
description Mycoplasma pneumoniae, a threatening pathogen with a minimal genome, is a model organism for bacterial systems biology for which substantial experimental information is available. With the goal of understanding the complex interactions underlying its metabolism, we analyzed and characterized the metabolic network of M. pneumoniae in great detail, integrating data from different omics analyses under a range of conditions into a constraint-based model backbone. Iterating model predictions, hypothesis generation, experimental testing, and model refinement, we accurately curated the network and quantitatively explored the energy metabolism. In contrast to other bacteria, M. pneumoniae uses most of its energy for maintenance tasks instead of growth. We show that in highly linear networks the prediction of flux distributions for different growth times allows analysis of time-dependent changes, albeit using a static model. By performing an in silico knock-out study as well as analyzing flux distributions in single and double mutant phenotypes, we demonstrated that the model accurately represents the metabolism of M. pneumoniae. The experimentally validated model provides a solid basis for understanding its metabolic regulatory mechanisms.
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spelling pubmed-36582752013-05-20 Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling Wodke, Judith A H Puchałka, Jacek Lluch-Senar, Maria Marcos, Josep Yus, Eva Godinho, Miguel Gutiérrez-Gallego, Ricardo dos Santos, Vitor A P Martins Serrano, Luis Klipp, Edda Maier, Tobias Mol Syst Biol Article Mycoplasma pneumoniae, a threatening pathogen with a minimal genome, is a model organism for bacterial systems biology for which substantial experimental information is available. With the goal of understanding the complex interactions underlying its metabolism, we analyzed and characterized the metabolic network of M. pneumoniae in great detail, integrating data from different omics analyses under a range of conditions into a constraint-based model backbone. Iterating model predictions, hypothesis generation, experimental testing, and model refinement, we accurately curated the network and quantitatively explored the energy metabolism. In contrast to other bacteria, M. pneumoniae uses most of its energy for maintenance tasks instead of growth. We show that in highly linear networks the prediction of flux distributions for different growth times allows analysis of time-dependent changes, albeit using a static model. By performing an in silico knock-out study as well as analyzing flux distributions in single and double mutant phenotypes, we demonstrated that the model accurately represents the metabolism of M. pneumoniae. The experimentally validated model provides a solid basis for understanding its metabolic regulatory mechanisms. European Molecular Biology Organization 2013-04-02 /pmc/articles/PMC3658275/ /pubmed/23549481 http://dx.doi.org/10.1038/msb.2013.6 Text en Copyright © 2013, EMBO and Macmillan Publishers Limited https://creativecommons.org/licenses/by-nc-sa/3.0/This article is licensed under a Creative Commons Attribution Noncommercial Share Alike 3.0 Unported License.
spellingShingle Article
Wodke, Judith A H
Puchałka, Jacek
Lluch-Senar, Maria
Marcos, Josep
Yus, Eva
Godinho, Miguel
Gutiérrez-Gallego, Ricardo
dos Santos, Vitor A P Martins
Serrano, Luis
Klipp, Edda
Maier, Tobias
Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling
title Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling
title_full Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling
title_fullStr Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling
title_full_unstemmed Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling
title_short Dissecting the energy metabolism in Mycoplasma pneumoniae through genome-scale metabolic modeling
title_sort dissecting the energy metabolism in mycoplasma pneumoniae through genome-scale metabolic modeling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3658275/
https://www.ncbi.nlm.nih.gov/pubmed/23549481
http://dx.doi.org/10.1038/msb.2013.6
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